• 제목/요약/키워드: 수직축 풍력

검색결과 90건 처리시간 0.03초

수직축(垂直軸) Darrieus 풍력(風力) 터어빈의 공기역학적특성(空氣力學的特性) 해석(解析)에 관한 연구(硏究) (A Study on the Analytical Methods for the Aerodynamic Characteristics of Vertical-Axis Darrieus Wind Turbine)

  • 김건훈;이철형;이규현
    • 태양에너지
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    • 제7권2호
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    • pp.74-85
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    • 1987
  • Performances of 3 different aerodynamic analytical models, single multiple and double multiple stream tube, for vertical axis Darrieus turbine were analyzed comparatively. From the study it has been found that the models derived from stream tube assumptions can be useful for simple prediction of basic design characteristics of Darrieus turbine. But, for a large tip speed and solidity ratios, the models has shown a certain limit in its applicability according to the formulation scheme applied. The results have shown that for the case having large tip speed and solidity ratios the consideration due to stream conditions, such as trailing vortices or wakes, should be included for accurate prediction of the aerodynamic performances of Darrieus turbine.

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A Study on the Performance of a 5 kW Scale VAWT with Omni-Directional Guide Vanes

  • Ryu, In-Ho;Hoang, Anh Dung;Kim, Jun-Ho;Lee, Ki-Seon;Yang, Chang-Jo
    • 한국유체기계학회 논문집
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    • 제19권4호
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    • pp.43-47
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    • 2016
  • Vertical axis wind turbine, despite of its limit in power efficiency, the simplicity in structure and maintenance is a competitive factor that keeps this type of turbine in the game until nowadays. Continuous solutions have been given to handle its major weakness and the use of omni-directional guide vane is an considerable one. In this paper, a 5kkW scale Savonius-based wind turbine enhanced with such guide vane system was design and studied. Together with reasonable blade design, the wind turbine shows promising performance compared with basic design while maintaining its original advantages.

H-다리우스 블레이드의 형상 변화에 따른 기동특성 해석 (Effect of Geometric Variation on Starting Characteristic Analysis of H-Darrieus Blades)

  • 정진환;강기원;김범수;이장호
    • 한국유체기계학회 논문집
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    • 제14권3호
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    • pp.45-49
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    • 2011
  • This paper describes the numerical analysis of effect of geometric variation on the straight-bladed vertical axis wind turbine. Geometry variation is performed with pockets on the blades. The results presented in this numerical analysis show the general flow pattern of near the bladed, and azimuth angle variation on stating torque value. It is shown that the pockets makes torque higher about 80%.

수직축 Wind-Turbine을 이용한 풍력발전 모델의 연구 (A Study of Wind Energy Power Plants Models using V.A.W.T)

  • 명관범;차득근
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2004년도 하계학술대회 논문집 B
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    • pp.1522-1524
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    • 2004
  • The wind turbine captures the wind's kinetic energy in a rotor consisting of two or more blades mechanically coupled to an electrical generator. In this paper is proposed models for wind energy power plants using V.A.W.T. and complex concepts using shapes of a half cylinder for blades. A familiar configuration for a drag-type wind machine is shown this paper. In this simple machine, kinetic energy in the wind is converted into mechanical energy in a vertical rotating shaft.

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수평 병렬형 풍력 발전기의 요각 및 MPPT 제어 (MPPT and Yawing Control of a New Horizontal-Axis Wind Turbine with Two Parallel-Connected Generators)

  • 이국선;최익;조황;백주훈
    • 한국전자통신학회논문지
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    • 제7권1호
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    • pp.81-89
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    • 2012
  • 범용적으로 사용되고 있는 수평형 풍력 터빈(HAWT)은 블레이드가 장착된 터빈이 회전부인 너셀에 고정되어 타워의 최상단에 지지되는 구조이다. 터빈에서 생산되는 전력은 너셀 내부에서 증속기를 통하여 발전기로 들어가게 된다. 발전기에서 생산되는 전력은 타워를 통해서 지상과 송전선으로 연결되므로 너셀의 요잉이 발생하는 경우 송전선의 꼬임이 발생하게 된다. 따라서 이를 방지하기 위한 슬립링이나 추가적인 요잉 제어 알고리즘이 필요한 단점이 있다. 제안하는 새로운 구조의 HAWT는 베벨기어와 중공축을 이용하여 송전선 문제를 해결하였다. 또한, 병렬로 접속된 두개의 발전기를 이용하여 요잉이 용이할 뿐 아니라 생산 전력을 분산시킴으로써 인버터의 용량을 줄일 수 있다. MPPT 알고리즘과 요잉 제어를 수행하는 시뮬레이션을 통해서 제안하는 구조가 풍력 발전에 효과적임을 보였다.

부유식 수직축 풍력발전 시스템의 운동특성 및 계류특성에 대한 연구 (Study on Motion and Mooring Characteristics of Floating Vertical Axis Wind Turbine System)

  • 장민석;조효제;황재혁;김재희;김헌우
    • 한국해양공학회지
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    • 제31권3호
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    • pp.202-207
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    • 2017
  • This paper presents the results of an experimental study on the motions and mooring characteristics of a floating vertical axis wind turbine system. Based on a comparison of regular wave experiment results, the motions of structures with different types of mooring are almost the same. Based on the tension response results of a regular wave experiment with a catenary mooring system, the mooring lines in front of the structure have a larger tension effect than the back of the structure by the drifted offset of the structure. The dynamic response spectrum of the structure in the irregular wave experiments showed no significant differences in response to differences in the mooring system. As a result of the comparison of the tension response spectra, the mooring lines have a larger value with a drifted offset for the structure, as shown in the previous regular wave experiment. The results of the dynamic response of the structure under irregular wave and wind conditions showed that the heave motion response is influenced by the coupled effect with the mooring lines of the surge and pitch motion due to the drifted offset and steady heeling. In addition, the mooring lines in front of the structure have a very large tension force compared to the mooring lines in back of the structure as a result of the drifted offset of the structure.

풍력 발전 터빈 후류의 동적 분석 (Dynamic analysis of wind turbine wake)

  • 엄용한;김윤구;박성군
    • 한국가시화정보학회지
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    • 제18권2호
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    • pp.59-65
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    • 2020
  • Vertical axis wind energy systems including 3 and 4 blades are numerically investigated in a two-dimensional (2D) computational domain. The power coefficient (Cp) is adopted to measure the efficiency of the system and the effect of the rotating velocity on the power coefficient is analyzed for the two different systems. The rotating velocity varies from 30 rad/s to 90 rad/s, which corresponds to the tip speed ratio (T.S.R) of 0.5 to 1.5. The torque exerted on the blades is mainly determined by the aerodynamic force in the x-direction and maximized when the blade is positioned at around θ = 186°. The efficiency of the 4-blade system is higher than that of the 3-blade system within the tip speed ratio range between 0.5 and 0.67, besides where the 3-blade system shows a better performance. For the 3-blade system, the maximum efficiency is reached to 0.082 at the tip speed ratio of 1.083. The maximum efficiency of the 4-blade system is 0.071 at T.S.R. = 0.92. The velocity fields in the x-direction, pressure fields, and the vorticity magnitude are analyzed in detail for the optimal cases of the 3- and 4-blades systems, respectively.

수직축 풍력발전용 날개의 기동력특성 (Self-Starting Characteristics of Blades for Vertical Axis Wind turbine)

  • 김성훈;김영익;이준민
    • 에너지공학
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    • 제29권1호
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    • pp.34-43
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    • 2020
  • 풍력발전기 로터의 저속운전 가능성에 대해 기동토크를 평가하고자 하였다. 본 연구에서 살펴본 저속시동 가능성의 날개는 초임계에어포일을 보완하여 AMI계열(AMI903 및 AMI904)의 날개를 제안하여 공력성능을 유지하며 제작상 및 유지보수의 어려움을 제거하였다. 따라서 본 연구는 FLUENT를 이용하여 난류유동 해석을 통해 제안된 날개의 받음각(-180°~+180°)에 대한 항력계수와 양력계수를 제시하였으며, 이 값들로부터 정지하고 있는 날개의 회전 위치에 따른 접선방향의 토크계수를 정의하여 제시하였다. 기동력의 크기와 방향을 결정할 토크계수는 대부분 양의 값(반시계방향)으로 나타났으며 특별히 받음각이 0°에서 180° 및 -90°에서 -180°에서 양의 값이며 0°에서 -90°에서 매우 작거나 음의 값을 나타냈다. 한편 기동토크는 두께가 얇은 AMI903보다 두꺼운 AMI904에서 더 큰 것으로 나타났다.

수직축 풍력터빈의 유동해석에 관한 연구 (A Study on Air Flow Analysis in Vertical-axis Wind Turbine)

  • 이기선;박정철
    • 전기학회논문지P
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    • 제66권4호
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    • pp.158-162
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    • 2017
  • This paper did basic study on the vertical-axis wind turbine. Namely, This paper was try to find the optimum conditions by using the ANSYS CFX simulation program through the changes of the main-blade angle and sub-blade angle. Main-blade Shape #4 angle $45^{\circ}$ compared to others Shape angle $0^{\circ}$ was increased by 157.2[%] to 263.2[%] in the power output and was increased by 110[%] to 250[%] in the power coefficient. Also, when the Shape #5 Fin length of main-blade doubles, because the power output was 70.8[%] compared to Shape #1 and 27.5[%] compared to Shape #4, and the power coefficient was 60[%] compared to Shape #1 and 28.6[%] compared to Shape #4, the power output and the power efficiency were rather reduced. The output current of Shape #4 was increased 109.9[%] compared to Shape #1 and increased 250[%] compared to Shape #5, and The output voltage of Shape #4 was increased 22.5[%] compared to Shape #1 and increased 3.7[%] compared to Shape #4.

이중 다류관 모델을 이용한 Darrieus 터어빈의 공기역학적 특성 해석 (Aerodynamic Characteristic Analysis of the Darrieus Turbine Using Double Multiple Streamtube Model)

  • 김건훈;박경호;정헌생
    • 태양에너지
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    • 제10권1호
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    • pp.47-56
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    • 1990
  • 수직축 다리우스 풍력 터어빈의 공기역학적 특성을 해석코자 날개요소이론과 운동량 이론에 근거하는 이중다류관모델을 정립하여 모델풍동실험과 병행하여 비교분석하였다. 이중 다류관 모델은 아직 수정 보완의 여지는 있으나 터어빈을 통과하는 유동의 변화가 심하지 않은 날개끝속도비나 회전면적비가 작은 경우에는 비교적 정확히 터어빈의 공기역학적 특성을 예측함을 알 수 있었고, 모형풍동실험을 통해 정확한 터어빈 회전수제어로서 각 특성변수들에 대한 영향을 살피었다. 본 연구의 결과로서는 다리우스 터어빈의 설계 및 운전특성 예측에의 응용이 기대될 수 있다.

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